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understanding of energy-conversion systems, thermodynamics, electrical engineering, heat and mass transfer, electrochemistry, or control engineering. The ability to conduct independent, systematic, and
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record in heat transfer and heat exchangers. You will demonstrate the ability to plan, organise, and deliver complex research programmes effectively, ensuring timely and successful outcomes. Experience in
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computing environment. A fundamental understanding of energy-conversion systems, thermodynamics, electrical engineering, heat and mass transfer, electrochemistry, or control engineering. The ability
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certain industrial processes. CST systems produce heat by concentrating solar radiation onto a receiver using a field of mirrors. This heat, removed by a Heat Transfer Fluid (HTF), can either be used
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fracture twin: Digital twin development for hydrogen-assisted crack propagation in buried steel pipelines [APS, Tata Steel; Karo Sedighiani] PhD 7: Cryogenic interface heat transfer for advanced thermal
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, Materials Science, Metallurgy, Chemical Engineering, Geoscience, or a closely related field Strong interest in thermodynamics, high-temperature processes, and experimental research Affinity with or experience
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evolution at high temperature. The transition towards smarter, lower-carbon manufacturing demands new ways to understand and monitor how materials evolve during processing. This PhD project addresses a
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modelling heat and mass transfer fluid mechanics reactor physics A strong interest in scientific computing and simulation. The qualities to carry out independent research, demonstrated, e.g., by the grades
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: Digital twin development for hydrogen-assisted crack propagation in buried steel pipelines [APS, Tata Steel; Karo Sedighiani] PhD 7: Cryogenic interface heat transfer for advanced thermal interfaces [Thermo
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). You will join the Propulsion & Power group, that combines expertise in thermodynamics, heat transfer and turbomachinery. Your supervisors will guide you while giving you the room to shape your own